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  4. Tunable Protein Hydrogels: Present State and Emerging Development
 
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Tunable Protein Hydrogels: Present State and Emerging Development

Publikationstyp
Book Part
Date Issued
2021
Sprache
English
Author(s)
Nie, Jinglei  
Zhang, Xiu  
Wang, Wei  
Ren, Jie  
Zeng, An-Ping  orcid-logo
Institut
Bioprozess- und Biosystemtechnik V-1  
TORE-URI
http://hdl.handle.net/11420/9741
First published in
Advances in biochemical engineering, biotechnology  
Number in series
178
Volume
178
Start Page
63
End Page
97
Citation
Tunable Hydrogels, Advances in Biochemical Engineering/Biotechnology 178: 63-97 (2021)
Publisher DOI
10.1007/10_2021_167
Scopus ID
2-s2.0-85107390027
PubMed ID
33860358
In recent years, protein and peptide-based hydrogels have received great attention for applications in biomedicine. Compared to hydrogels based on synthetic materials, they have the decisive advantages of being biological origin, providing cells with a more in vivo-like microenvironment and possessing potential biological activity. Empowered by the steadily deepened understanding of the sequence-structure-function relationship of natural proteins and the rapid development of molecular-biological tools for accurate protein sequence editing, researchers have developed a series of recombinant proteins as building blocks and responsive blocks to design novel functional hydrogels. The use of multi-block design further expands the customizability of protein hydrogels. With the improvement of standardization of preparation and testing methods, protein hydrogels are expected to be widely used in medical treatment, skin care, artificial organs and wearable electronic devices. More recently, the emergence of catalytically active protein hydrogel brings new opportunities for applications of protein hydrogels. It is believed that through integrated approaches of engineering biology and materials sciences novel and hereto unthinkable protein hydrogels and properties may be generated for applications in areas beyond medicine and health, including biotechnology, food and agriculture, and even energy.
Subjects
Biomedical materials
Catalytic hydrogels
Protein hydrogels
Tunable properties
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